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Microstructural Change during Creep Deformation in a 10 percent Cr Martensitic Steel

机译:10%Cr马氏体钢蠕变变形过程中的显微组织变化

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The relationship between creep deformation and microstructural changes in martensitic 10Cr-MoW steel has been studied. Transmission electron microscopy and image analyser were used to determine the variation of precipitates and martensite lath width size during creep deformation and aging. As precipitates are coarsened during creep deformation, dislocations become easy to move and the recovery proceeds rapidly. This leads to the growth of lath width. The average size of precipitates was linearly increased with creep time. On the other hand the growth rate of lath width is constant until tertiary creep, but the growth of lath width is accelerated during tertiary creep. It has been concluded that the growth behavior of lath width are consistent with creep deformation. Because the growth of lath width is controlled by the coarsening of precipitates it is important to form more stable precipitates in creep condition for improvement of creep properties of martensitic steel. Microstructure of martensitic steel is thermally very stable, so the size of precipitates and martensite lath width are hardly changed during aging.
机译:研究了马氏体10Cr-MoW钢的蠕变变形与组织变化之间的关系。使用透射电子显微镜和图像分析仪确定蠕变变形和时效过程中沉淀物和马氏体板条宽度尺寸的变化。由于在蠕变变形过程中析出物变粗,位错变得易于移动,恢复迅速进行。这导致板条宽度的增加。沉淀物的平均尺寸随蠕变时间线性增加。另一方面,在第三纪蠕变之前,板条宽度的生长速率是恒定的,但是在第三纪蠕变期间,板条宽度的生长被加速。已经得出结论,板条宽度的生长行为与蠕变变形是一致的。由于板条宽度的增长受析出物粗化的控制,因此在蠕变条件下形成更稳定的析出物对于改善马氏体钢的蠕变性能很重要。马氏体钢的组织非常热稳定,因此在时效过程中几乎不改变析出物的大小和马氏体板条宽度。

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